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Use of bentonite and activated carbon in controlled release formulations of carbofuran

机译:膨润土和活性炭在呋喃丹控释制剂中的用途

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Controlled release systems (CRS), unlike the conventional formulations, facilitate a gradual and controlled discharge of the pesticides, reducing the losses by evaporation and leaching and minimizing pesticide pollution. In this study, carbofuran-an insecticide-nematicide identified as a groundwater pollutant-was incorporated in alginate-based granules to obtain controlled release properties. The effect on carbofuran release rate caused by the incorporation of bentonite, activated carbon, and different mixtures of both sorbents in alginate basic formulation was studied by immersion of the granules in water. The water uptake, sorption capacity of the sorbent, permeability, and time taken for 50% of the active ingredient to be released into water, T-50, were calculated by the comparison of the preparations. T-50 values were higher for those formulations containing bentonite and/or activated carbon (T-50 values range from 14.76 h for the alginate formulation containing only bentonite as the sorbent to 29.5 weeks for the alginate formulation containing only activated carbon as the sorbent) than for the preparation without these sorbents (11.72 h). On the basis of a parameter of an empirical equation used to fit the insecticide-nernaticide release data, it appears that the release of carbofuran from the various formulations into water is controlled by a diffusion mechanism. The sorption capacity of the sorbents for carbofuran was the most important factor modulating carbofuran release. In addition, it was observed that there is a linear correlation of the T-50 values and the content of activated carbon in dry granules.
机译:与常规配方不同,控释系统(CRS)有助于逐步控制农药的排放,减少蒸发和浸出造成的损失,并最大程度地减少农药污染。在这项研究中,将呋喃丹(一种杀虫剂杀线虫剂)鉴定为地下水污染物,将其掺入藻酸盐基颗粒中以获得控释特性。通过将颗粒浸入水中研究了膨润土,活性炭以及两种吸附剂在藻酸盐基本配方中的不同混合物对呋喃呋喃释放速率的影响。通过比较制剂,计算出吸水率,吸附剂的吸附能力,渗透性和50%的活性成分释放到水中所花费的时间T-50。对于那些含有膨润土和/或活性炭的配方,T-50值较高(对于仅含有膨润土作为吸附剂的藻酸盐配方,T-50值为14.76 h,对于仅含有活性炭作为吸附剂的藻酸盐配方的T-50值为29.5周)比不使用这些吸附剂的制备过程要长(11.72小时)。基于用于拟合杀虫剂-杀螨剂释放数据的经验方程式的参数,看来,呋喃丹从各种制剂向水中的释放是通过扩散机制控制的。呋喃丹吸附剂的吸附能力是调节呋喃丹释放的最重要因素。另外,观察到干燥颗粒中T-50值与活性炭含量呈线性关系。

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